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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Potential of Retrofit Passive Flow Control for Small Horizontal Axis Wind Turbines
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Potential of Retrofit Passive Flow Control for Small Horizontal Axis Wind Turbines

机译:小型水平轴风力发电机的被动流量控制改造潜力

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摘要

The present paper analyzes the effect of passive flow control (PFC) with respect to the retrofitting on small horizontal axis wind turbines (sHAWTs). We conducted extensive wind tunnel studies on a high performance low Reynolds airfoil using different PFC elements, i.e., vortex generators (VGs) and Gurney flaps (GF). qblade, an open source blade element momentum (BEM) code, is used to study the retrofitting potential of a simulated small wind turbine. The turbine design is presented and discussed. The simulations include the data and polars gained from the experiments and give further insight into the effects of PFC on sHAWTs. Therefore, several different blades were simulated using several variations of VG positions. This paper discusses their influence on the turbine performance. The authors especially focus on the startup performance as well as achieving increased power output at lower wind speeds. The vortex generators reduce the risk of laminar separation and enhance the lift in some configurations by more than 40% at low Reynolds numbers.
机译:本文分析了相对于小型水平轴风力涡轮机(sHAWTs)改装的被动式流量控制(PFC)的效果。我们使用不同的PFC元件(即涡流发生器(VG)和格尼襟翼(GF))对高性能低雷诺兹翼型进行了广泛的风洞研究。 qblade是一种开源叶片元素动量(BEM)代码,用于研究模拟小型风力涡轮机的改装潜力。介绍并讨论了涡轮机的设计。模拟包括从实验中获得的数据和极性,并进一步了解了PFC对sHAWT的影响。因此,使用VG位置的几种变化模拟了几种不同的叶片。本文讨论了它们对涡轮性能的影响。作者特别关注启动性能以及在较低风速下获得更高的功率输出。在低雷诺数下,涡流发生器降低了层流分离的风险,并使某些配置中的升力提高了40%以上。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2017年第3期|032604.1-032604.8|共8页
  • 作者单位

    Chair of Fluid Dynamics,Hermann-Foettinger-Institut,Technische Universitaet Berlin,Mueller-Breslau-Strasse 8,Berlin 10623, Germany;

    Chair of Fluid Dynamics,Hermann-Foettinger-Institut,Technische Universitaet Berlin,Mueller-Breslau-Strasse 8,Berlin 10623, Germany;

    Chair of Fluid Dynamics,Hermann-Foettinger-Institut,Technische Universitaet Berlin,Mueller-Breslau-Strasse 8,Berlin 10623, Germany;

    Chair of Fluid Dynamics,Hermann-Foettinger-Institut,Technische Universitaet Berlin,Mueller-Breslau-Strasse 8,Berlin 10623, Germany;

    Chair of Fluid Dynamics,Hermann-Foettinger-Institut,Technische Universitaet Berlin,Mueller-Breslau-Strasse 8,Berlin 10623, Germany;

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